Acoustic Emission Source Characterisation in Large-Scale Composite Structures

Author:

Eaton Mark J.1,Pullin Rhys1,Featherston C.A.1,Holford Karen M.1

Affiliation:

1. Cardiff University

Abstract

Damage detection and location in aerospace composites is currently of great interest in the research community and is being driven by the need to reduce weight of commercial aircrafts and hence make substantial environmental improvements. The increased use of composites as safety critical components has led to the need for development of structural health monitoring (SHM) systems. Acoustic Emission (AE) offers an excellent potential for delivering the necessary information of damage detection to maintenance engineers in terms of location however there are currently no methodologies that can use AE signals to characterise damage sources. This paper explores a methodology for damage characterisation based on measuring the amplitude ratio (MAR) of the two primary plate wave modes, to allow identification of in-plane (matrix cracking) and out-of-plane sources (delamination). Results from a large-scale buckling test show good correlation between signal characterization and observed damage mechanisms.

Publisher

Trans Tech Publications, Ltd.

Reference11 articles.

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3. Lindahl, D., and, Knuuttila, M. 1999. Acoustic Emission Monitoring of the JAS 39 Gripen Combat Aircraft. In: USAF Aircraft Structural Integrity Program (ASZP99) Conference. San Antonio, 30th Nov - 2nd Dec.

4. Finlayson, R. D., Friesel, M., Carlos, M., Cole, P. and Lenain, J. C. 2000. Health Monitoring of Aerospace Structures with Acoustic Emission and Acousto-Ultrasonics. 15th World Conference of Non-Destructive Testing, Rome, Italy, 15th – 21st October.

5. Rowland, C. 2004. Acoustic Emission Technique to Assist the Formula One Designer in Structural Design. In: 26th European Conference on Acoustic Emission Testing. Berlin, Germany, 15-17th September.

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